178d19a39SMichal Simek /* 278d19a39SMichal Simek * (C) Copyright 2007-2009 Michal Simek 378d19a39SMichal Simek * (C) Copyright 2003 Xilinx Inc. 489c53891SMichal Simek * 589c53891SMichal Simek * Michal SIMEK <monstr@monstr.eu> 689c53891SMichal Simek * 71a459660SWolfgang Denk * SPDX-License-Identifier: GPL-2.0+ 878d19a39SMichal Simek */ 989c53891SMichal Simek 1089c53891SMichal Simek #include <common.h> 1189c53891SMichal Simek #include <net.h> 1289c53891SMichal Simek #include <config.h> 13d538ee1bSMichal Simek #include <dm.h> 14d722e864SMichal Simek #include <console.h> 15042272a6SMichal Simek #include <malloc.h> 1689c53891SMichal Simek #include <asm/io.h> 17d722e864SMichal Simek #include <phy.h> 18d722e864SMichal Simek #include <miiphy.h> 197fd70820SMichal Simek #include <fdtdec.h> 20d722e864SMichal Simek #include <asm-generic/errno.h> 214d2749beSMichal Simek #include <linux/kernel.h> 22*39e020efSZubair Lutfullah Kakakhel #include <asm/io.h> 237fd70820SMichal Simek 24d538ee1bSMichal Simek DECLARE_GLOBAL_DATA_PTR; 2589c53891SMichal Simek 2689c53891SMichal Simek #define ENET_ADDR_LENGTH 6 274d2749beSMichal Simek #define ETH_FCS_LEN 4 /* Octets in the FCS */ 2889c53891SMichal Simek 2989c53891SMichal Simek /* Xmit complete */ 3089c53891SMichal Simek #define XEL_TSR_XMIT_BUSY_MASK 0x00000001UL 3189c53891SMichal Simek /* Xmit interrupt enable bit */ 3289c53891SMichal Simek #define XEL_TSR_XMIT_IE_MASK 0x00000008UL 3389c53891SMichal Simek /* Program the MAC address */ 3489c53891SMichal Simek #define XEL_TSR_PROGRAM_MASK 0x00000002UL 3589c53891SMichal Simek /* define for programming the MAC address into the EMAC Lite */ 3689c53891SMichal Simek #define XEL_TSR_PROG_MAC_ADDR (XEL_TSR_XMIT_BUSY_MASK | XEL_TSR_PROGRAM_MASK) 3789c53891SMichal Simek 3889c53891SMichal Simek /* Transmit packet length upper byte */ 3989c53891SMichal Simek #define XEL_TPLR_LENGTH_MASK_HI 0x0000FF00UL 4089c53891SMichal Simek /* Transmit packet length lower byte */ 4189c53891SMichal Simek #define XEL_TPLR_LENGTH_MASK_LO 0x000000FFUL 4289c53891SMichal Simek 4389c53891SMichal Simek /* Recv complete */ 4489c53891SMichal Simek #define XEL_RSR_RECV_DONE_MASK 0x00000001UL 4589c53891SMichal Simek /* Recv interrupt enable bit */ 4689c53891SMichal Simek #define XEL_RSR_RECV_IE_MASK 0x00000008UL 4789c53891SMichal Simek 48d722e864SMichal Simek /* MDIO Address Register Bit Masks */ 49d722e864SMichal Simek #define XEL_MDIOADDR_REGADR_MASK 0x0000001F /* Register Address */ 50d722e864SMichal Simek #define XEL_MDIOADDR_PHYADR_MASK 0x000003E0 /* PHY Address */ 51d722e864SMichal Simek #define XEL_MDIOADDR_PHYADR_SHIFT 5 52d722e864SMichal Simek #define XEL_MDIOADDR_OP_MASK 0x00000400 /* RD/WR Operation */ 53d722e864SMichal Simek 54d722e864SMichal Simek /* MDIO Write Data Register Bit Masks */ 55d722e864SMichal Simek #define XEL_MDIOWR_WRDATA_MASK 0x0000FFFF /* Data to be Written */ 56d722e864SMichal Simek 57d722e864SMichal Simek /* MDIO Read Data Register Bit Masks */ 58d722e864SMichal Simek #define XEL_MDIORD_RDDATA_MASK 0x0000FFFF /* Data to be Read */ 59d722e864SMichal Simek 60d722e864SMichal Simek /* MDIO Control Register Bit Masks */ 61d722e864SMichal Simek #define XEL_MDIOCTRL_MDIOSTS_MASK 0x00000001 /* MDIO Status Mask */ 62d722e864SMichal Simek #define XEL_MDIOCTRL_MDIOEN_MASK 0x00000008 /* MDIO Enable */ 63d722e864SMichal Simek 649a23c496SMichal Simek struct emaclite_regs { 659a23c496SMichal Simek u32 tx_ping; /* 0x0 - TX Ping buffer */ 669a23c496SMichal Simek u32 reserved1[504]; 679a23c496SMichal Simek u32 mdioaddr; /* 0x7e4 - MDIO Address Register */ 689a23c496SMichal Simek u32 mdiowr; /* 0x7e8 - MDIO Write Data Register */ 699a23c496SMichal Simek u32 mdiord;/* 0x7ec - MDIO Read Data Register */ 709a23c496SMichal Simek u32 mdioctrl; /* 0x7f0 - MDIO Control Register */ 719a23c496SMichal Simek u32 tx_ping_tplr; /* 0x7f4 - Tx packet length */ 729a23c496SMichal Simek u32 global_interrupt; /* 0x7f8 - Global interrupt enable */ 739a23c496SMichal Simek u32 tx_ping_tsr; /* 0x7fc - Tx status */ 749a23c496SMichal Simek u32 tx_pong; /* 0x800 - TX Pong buffer */ 759a23c496SMichal Simek u32 reserved2[508]; 769a23c496SMichal Simek u32 tx_pong_tplr; /* 0xff4 - Tx packet length */ 779a23c496SMichal Simek u32 reserved3; /* 0xff8 */ 789a23c496SMichal Simek u32 tx_pong_tsr; /* 0xffc - Tx status */ 799a23c496SMichal Simek u32 rx_ping; /* 0x1000 - Receive Buffer */ 809a23c496SMichal Simek u32 reserved4[510]; 819a23c496SMichal Simek u32 rx_ping_rsr; /* 0x17fc - Rx status */ 829a23c496SMichal Simek u32 rx_pong; /* 0x1800 - Receive Buffer */ 839a23c496SMichal Simek u32 reserved5[510]; 849a23c496SMichal Simek u32 rx_pong_rsr; /* 0x1ffc - Rx status */ 859a23c496SMichal Simek }; 869a23c496SMichal Simek 87773cfa8dSMichal Simek struct xemaclite { 884d2749beSMichal Simek bool use_rx_pong_buffer_next; /* Next RX buffer to read from */ 89947324b9SMichal Simek u32 txpp; /* TX ping pong buffer */ 90947324b9SMichal Simek u32 rxpp; /* RX ping pong buffer */ 91d722e864SMichal Simek int phyaddr; 929a23c496SMichal Simek struct emaclite_regs *regs; 93d722e864SMichal Simek struct phy_device *phydev; 94d722e864SMichal Simek struct mii_dev *bus; 95773cfa8dSMichal Simek }; 9689c53891SMichal Simek 97f412b6abSMichal Simek static uchar etherrxbuff[PKTSIZE_ALIGN]; /* Receive buffer */ 9889c53891SMichal Simek 99042272a6SMichal Simek static void xemaclite_alignedread(u32 *srcptr, void *destptr, u32 bytecount) 10089c53891SMichal Simek { 101042272a6SMichal Simek u32 i; 10289c53891SMichal Simek u32 alignbuffer; 10389c53891SMichal Simek u32 *to32ptr; 10489c53891SMichal Simek u32 *from32ptr; 10589c53891SMichal Simek u8 *to8ptr; 10689c53891SMichal Simek u8 *from8ptr; 10789c53891SMichal Simek 10889c53891SMichal Simek from32ptr = (u32 *) srcptr; 10989c53891SMichal Simek 11089c53891SMichal Simek /* Word aligned buffer, no correction needed. */ 11189c53891SMichal Simek to32ptr = (u32 *) destptr; 11289c53891SMichal Simek while (bytecount > 3) { 11389c53891SMichal Simek *to32ptr++ = *from32ptr++; 11489c53891SMichal Simek bytecount -= 4; 11589c53891SMichal Simek } 11689c53891SMichal Simek to8ptr = (u8 *) to32ptr; 11789c53891SMichal Simek 11889c53891SMichal Simek alignbuffer = *from32ptr++; 11989c53891SMichal Simek from8ptr = (u8 *) &alignbuffer; 12089c53891SMichal Simek 1215ac83801SMichal Simek for (i = 0; i < bytecount; i++) 12289c53891SMichal Simek *to8ptr++ = *from8ptr++; 12389c53891SMichal Simek } 12489c53891SMichal Simek 12500702518SMichal Simek static void xemaclite_alignedwrite(void *srcptr, u32 *destptr, u32 bytecount) 12689c53891SMichal Simek { 127042272a6SMichal Simek u32 i; 12889c53891SMichal Simek u32 alignbuffer; 12989c53891SMichal Simek u32 *to32ptr = (u32 *) destptr; 13089c53891SMichal Simek u32 *from32ptr; 13189c53891SMichal Simek u8 *to8ptr; 13289c53891SMichal Simek u8 *from8ptr; 13389c53891SMichal Simek 13489c53891SMichal Simek from32ptr = (u32 *) srcptr; 13589c53891SMichal Simek while (bytecount > 3) { 13689c53891SMichal Simek 13789c53891SMichal Simek *to32ptr++ = *from32ptr++; 13889c53891SMichal Simek bytecount -= 4; 13989c53891SMichal Simek } 14089c53891SMichal Simek 14189c53891SMichal Simek alignbuffer = 0; 14289c53891SMichal Simek to8ptr = (u8 *) &alignbuffer; 14389c53891SMichal Simek from8ptr = (u8 *) from32ptr; 14489c53891SMichal Simek 1455ac83801SMichal Simek for (i = 0; i < bytecount; i++) 14689c53891SMichal Simek *to8ptr++ = *from8ptr++; 14789c53891SMichal Simek 14889c53891SMichal Simek *to32ptr++ = alignbuffer; 14989c53891SMichal Simek } 15089c53891SMichal Simek 151d722e864SMichal Simek static int wait_for_bit(const char *func, u32 *reg, const u32 mask, 152d722e864SMichal Simek bool set, unsigned int timeout) 153d722e864SMichal Simek { 154d722e864SMichal Simek u32 val; 155d722e864SMichal Simek unsigned long start = get_timer(0); 156d722e864SMichal Simek 157d722e864SMichal Simek while (1) { 158d722e864SMichal Simek val = readl(reg); 159d722e864SMichal Simek 160d722e864SMichal Simek if (!set) 161d722e864SMichal Simek val = ~val; 162d722e864SMichal Simek 163d722e864SMichal Simek if ((val & mask) == mask) 164d722e864SMichal Simek return 0; 165d722e864SMichal Simek 166d722e864SMichal Simek if (get_timer(start) > timeout) 167d722e864SMichal Simek break; 168d722e864SMichal Simek 169d722e864SMichal Simek if (ctrlc()) { 170d722e864SMichal Simek puts("Abort\n"); 171d722e864SMichal Simek return -EINTR; 172d722e864SMichal Simek } 173d722e864SMichal Simek 174d722e864SMichal Simek udelay(1); 175d722e864SMichal Simek } 176d722e864SMichal Simek 177d722e864SMichal Simek debug("%s: Timeout (reg=%p mask=%08x wait_set=%i)\n", 178d722e864SMichal Simek func, reg, mask, set); 179d722e864SMichal Simek 180d722e864SMichal Simek return -ETIMEDOUT; 181d722e864SMichal Simek } 182d722e864SMichal Simek 1839a23c496SMichal Simek static int mdio_wait(struct emaclite_regs *regs) 184d722e864SMichal Simek { 1859a23c496SMichal Simek return wait_for_bit(__func__, ®s->mdioctrl, 186d722e864SMichal Simek XEL_MDIOCTRL_MDIOSTS_MASK, false, 2000); 187d722e864SMichal Simek } 188d722e864SMichal Simek 1899a23c496SMichal Simek static u32 phyread(struct xemaclite *emaclite, u32 phyaddress, u32 registernum, 190d722e864SMichal Simek u16 *data) 191d722e864SMichal Simek { 1929a23c496SMichal Simek struct emaclite_regs *regs = emaclite->regs; 1939a23c496SMichal Simek 1949a23c496SMichal Simek if (mdio_wait(regs)) 195d722e864SMichal Simek return 1; 196d722e864SMichal Simek 1979a23c496SMichal Simek u32 ctrl_reg = in_be32(®s->mdioctrl); 1989a23c496SMichal Simek out_be32(®s->mdioaddr, XEL_MDIOADDR_OP_MASK | 199d722e864SMichal Simek ((phyaddress << XEL_MDIOADDR_PHYADR_SHIFT) | registernum)); 2009a23c496SMichal Simek out_be32(®s->mdioctrl, ctrl_reg | XEL_MDIOCTRL_MDIOSTS_MASK); 201d722e864SMichal Simek 2029a23c496SMichal Simek if (mdio_wait(regs)) 203d722e864SMichal Simek return 1; 204d722e864SMichal Simek 205d722e864SMichal Simek /* Read data */ 2069a23c496SMichal Simek *data = in_be32(®s->mdiord); 207d722e864SMichal Simek return 0; 208d722e864SMichal Simek } 209d722e864SMichal Simek 2109a23c496SMichal Simek static u32 phywrite(struct xemaclite *emaclite, u32 phyaddress, u32 registernum, 211d722e864SMichal Simek u16 data) 212d722e864SMichal Simek { 2139a23c496SMichal Simek struct emaclite_regs *regs = emaclite->regs; 2149a23c496SMichal Simek 2159a23c496SMichal Simek if (mdio_wait(regs)) 216d722e864SMichal Simek return 1; 217d722e864SMichal Simek 218d722e864SMichal Simek /* 219d722e864SMichal Simek * Write the PHY address, register number and clear the OP bit in the 220d722e864SMichal Simek * MDIO Address register and then write the value into the MDIO Write 221d722e864SMichal Simek * Data register. Finally, set the Status bit in the MDIO Control 222d722e864SMichal Simek * register to start a MDIO write transaction. 223d722e864SMichal Simek */ 2249a23c496SMichal Simek u32 ctrl_reg = in_be32(®s->mdioctrl); 2259a23c496SMichal Simek out_be32(®s->mdioaddr, ~XEL_MDIOADDR_OP_MASK & 226d722e864SMichal Simek ((phyaddress << XEL_MDIOADDR_PHYADR_SHIFT) | registernum)); 2279a23c496SMichal Simek out_be32(®s->mdiowr, data); 2289a23c496SMichal Simek out_be32(®s->mdioctrl, ctrl_reg | XEL_MDIOCTRL_MDIOSTS_MASK); 229d722e864SMichal Simek 2309a23c496SMichal Simek if (mdio_wait(regs)) 231d722e864SMichal Simek return 1; 232d722e864SMichal Simek 233d722e864SMichal Simek return 0; 234d722e864SMichal Simek } 235d722e864SMichal Simek 236f03ec010SMichal Simek static void emaclite_stop(struct udevice *dev) 23789c53891SMichal Simek { 238f03ec010SMichal Simek debug("eth_stop\n"); 23989c53891SMichal Simek } 24089c53891SMichal Simek 241d722e864SMichal Simek /* Use MII register 1 (MII status register) to detect PHY */ 242d722e864SMichal Simek #define PHY_DETECT_REG 1 243d722e864SMichal Simek 244d722e864SMichal Simek /* Mask used to verify certain PHY features (or register contents) 245d722e864SMichal Simek * in the register above: 246d722e864SMichal Simek * 0x1000: 10Mbps full duplex support 247d722e864SMichal Simek * 0x0800: 10Mbps half duplex support 248d722e864SMichal Simek * 0x0008: Auto-negotiation support 249d722e864SMichal Simek */ 250d722e864SMichal Simek #define PHY_DETECT_MASK 0x1808 251d722e864SMichal Simek 252d538ee1bSMichal Simek static int setup_phy(struct udevice *dev) 253d722e864SMichal Simek { 25455259e7cSMichal Simek int i, ret; 255d722e864SMichal Simek u16 phyreg; 256d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 257d722e864SMichal Simek struct phy_device *phydev; 258d722e864SMichal Simek 259d722e864SMichal Simek u32 supported = SUPPORTED_10baseT_Half | 260d722e864SMichal Simek SUPPORTED_10baseT_Full | 261d722e864SMichal Simek SUPPORTED_100baseT_Half | 262d722e864SMichal Simek SUPPORTED_100baseT_Full; 263d722e864SMichal Simek 264d722e864SMichal Simek if (emaclite->phyaddr != -1) { 2659a23c496SMichal Simek phyread(emaclite, emaclite->phyaddr, PHY_DETECT_REG, &phyreg); 266d722e864SMichal Simek if ((phyreg != 0xFFFF) && 267d722e864SMichal Simek ((phyreg & PHY_DETECT_MASK) == PHY_DETECT_MASK)) { 268d722e864SMichal Simek /* Found a valid PHY address */ 269d722e864SMichal Simek debug("Default phy address %d is valid\n", 270d722e864SMichal Simek emaclite->phyaddr); 271d722e864SMichal Simek } else { 272d722e864SMichal Simek debug("PHY address is not setup correctly %d\n", 273d722e864SMichal Simek emaclite->phyaddr); 274d722e864SMichal Simek emaclite->phyaddr = -1; 275d722e864SMichal Simek } 276d722e864SMichal Simek } 277d722e864SMichal Simek 278d722e864SMichal Simek if (emaclite->phyaddr == -1) { 279d722e864SMichal Simek /* detect the PHY address */ 280d722e864SMichal Simek for (i = 31; i >= 0; i--) { 2819a23c496SMichal Simek phyread(emaclite, i, PHY_DETECT_REG, &phyreg); 282d722e864SMichal Simek if ((phyreg != 0xFFFF) && 283d722e864SMichal Simek ((phyreg & PHY_DETECT_MASK) == PHY_DETECT_MASK)) { 284d722e864SMichal Simek /* Found a valid PHY address */ 285d722e864SMichal Simek emaclite->phyaddr = i; 286d722e864SMichal Simek debug("emaclite: Found valid phy address, %d\n", 287d722e864SMichal Simek i); 288d722e864SMichal Simek break; 289d722e864SMichal Simek } 290d722e864SMichal Simek } 291d722e864SMichal Simek } 292d722e864SMichal Simek 293d722e864SMichal Simek /* interface - look at tsec */ 294d722e864SMichal Simek phydev = phy_connect(emaclite->bus, emaclite->phyaddr, dev, 295d722e864SMichal Simek PHY_INTERFACE_MODE_MII); 296d722e864SMichal Simek /* 297d722e864SMichal Simek * Phy can support 1000baseT but device NOT that's why phydev->supported 298d722e864SMichal Simek * must be setup for 1000baseT. phydev->advertising setups what speeds 299d722e864SMichal Simek * will be used for autonegotiation where 1000baseT must be disabled. 300d722e864SMichal Simek */ 301d722e864SMichal Simek phydev->supported = supported | SUPPORTED_1000baseT_Half | 302d722e864SMichal Simek SUPPORTED_1000baseT_Full; 303d722e864SMichal Simek phydev->advertising = supported; 304d722e864SMichal Simek emaclite->phydev = phydev; 305d722e864SMichal Simek phy_config(phydev); 30655259e7cSMichal Simek ret = phy_startup(phydev); 30755259e7cSMichal Simek if (ret) 30855259e7cSMichal Simek return ret; 309d722e864SMichal Simek 310d722e864SMichal Simek if (!phydev->link) { 311d722e864SMichal Simek printf("%s: No link.\n", phydev->dev->name); 312d722e864SMichal Simek return 0; 313d722e864SMichal Simek } 314d722e864SMichal Simek 315d722e864SMichal Simek /* Do not setup anything */ 316d722e864SMichal Simek return 1; 317d722e864SMichal Simek } 318d722e864SMichal Simek 319f03ec010SMichal Simek static int emaclite_start(struct udevice *dev) 32089c53891SMichal Simek { 321d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 322d538ee1bSMichal Simek struct eth_pdata *pdata = dev_get_platdata(dev); 3239a23c496SMichal Simek struct emaclite_regs *regs = emaclite->regs; 3249a23c496SMichal Simek 32589c53891SMichal Simek debug("EmacLite Initialization Started\n"); 32689c53891SMichal Simek 32789c53891SMichal Simek /* 32889c53891SMichal Simek * TX - TX_PING & TX_PONG initialization 32989c53891SMichal Simek */ 33089c53891SMichal Simek /* Restart PING TX */ 331a0b2bfb0SMichal Simek out_be32(®s->tx_ping_tsr, 0); 33289c53891SMichal Simek /* Copy MAC address */ 333d538ee1bSMichal Simek xemaclite_alignedwrite(pdata->enetaddr, ®s->tx_ping, 334a0b2bfb0SMichal Simek ENET_ADDR_LENGTH); 33589c53891SMichal Simek /* Set the length */ 336a0b2bfb0SMichal Simek out_be32(®s->tx_ping_tplr, ENET_ADDR_LENGTH); 33789c53891SMichal Simek /* Update the MAC address in the EMAC Lite */ 338a0b2bfb0SMichal Simek out_be32(®s->tx_ping_tsr, XEL_TSR_PROG_MAC_ADDR); 33989c53891SMichal Simek /* Wait for EMAC Lite to finish with the MAC address update */ 340a0b2bfb0SMichal Simek while ((in_be32 (®s->tx_ping_tsr) & 3418d95ddbbSMichal Simek XEL_TSR_PROG_MAC_ADDR) != 0) 3428d95ddbbSMichal Simek ; 34389c53891SMichal Simek 344947324b9SMichal Simek if (emaclite->txpp) { 34589c53891SMichal Simek /* The same operation with PONG TX */ 346a0b2bfb0SMichal Simek out_be32(®s->tx_pong_tsr, 0); 347d538ee1bSMichal Simek xemaclite_alignedwrite(pdata->enetaddr, ®s->tx_pong, 348a0b2bfb0SMichal Simek ENET_ADDR_LENGTH); 349a0b2bfb0SMichal Simek out_be32(®s->tx_pong_tplr, ENET_ADDR_LENGTH); 350a0b2bfb0SMichal Simek out_be32(®s->tx_pong_tsr, XEL_TSR_PROG_MAC_ADDR); 351a0b2bfb0SMichal Simek while ((in_be32(®s->tx_pong_tsr) & 352a0b2bfb0SMichal Simek XEL_TSR_PROG_MAC_ADDR) != 0) 3538d95ddbbSMichal Simek ; 354947324b9SMichal Simek } 35589c53891SMichal Simek 35689c53891SMichal Simek /* 35789c53891SMichal Simek * RX - RX_PING & RX_PONG initialization 35889c53891SMichal Simek */ 35989c53891SMichal Simek /* Write out the value to flush the RX buffer */ 3603af70909SMichal Simek out_be32(®s->rx_ping_rsr, XEL_RSR_RECV_IE_MASK); 361947324b9SMichal Simek 362947324b9SMichal Simek if (emaclite->rxpp) 3633af70909SMichal Simek out_be32(®s->rx_pong_rsr, XEL_RSR_RECV_IE_MASK); 36489c53891SMichal Simek 3659a23c496SMichal Simek out_be32(®s->mdioctrl, XEL_MDIOCTRL_MDIOEN_MASK); 3669a23c496SMichal Simek if (in_be32(®s->mdioctrl) & XEL_MDIOCTRL_MDIOEN_MASK) 367d722e864SMichal Simek if (!setup_phy(dev)) 368d722e864SMichal Simek return -1; 369d538ee1bSMichal Simek 37089c53891SMichal Simek debug("EmacLite Initialization complete\n"); 37189c53891SMichal Simek return 0; 37289c53891SMichal Simek } 37389c53891SMichal Simek 37426c7945aSMichal Simek static int xemaclite_txbufferavailable(struct xemaclite *emaclite) 37589c53891SMichal Simek { 37626c7945aSMichal Simek u32 tmp; 37726c7945aSMichal Simek struct emaclite_regs *regs = emaclite->regs; 378773cfa8dSMichal Simek 37989c53891SMichal Simek /* 38089c53891SMichal Simek * Read the other buffer register 38189c53891SMichal Simek * and determine if the other buffer is available 38289c53891SMichal Simek */ 38326c7945aSMichal Simek tmp = ~in_be32(®s->tx_ping_tsr); 38426c7945aSMichal Simek if (emaclite->txpp) 38526c7945aSMichal Simek tmp |= ~in_be32(®s->tx_pong_tsr); 38689c53891SMichal Simek 38726c7945aSMichal Simek return !(tmp & XEL_TSR_XMIT_BUSY_MASK); 38889c53891SMichal Simek } 38989c53891SMichal Simek 390d538ee1bSMichal Simek static int emaclite_send(struct udevice *dev, void *ptr, int len) 391042272a6SMichal Simek { 392042272a6SMichal Simek u32 reg; 393d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 3945a4baa33SMichal Simek struct emaclite_regs *regs = emaclite->regs; 39589c53891SMichal Simek 396042272a6SMichal Simek u32 maxtry = 1000; 39789c53891SMichal Simek 39880439252SMichal Simek if (len > PKTSIZE) 39980439252SMichal Simek len = PKTSIZE; 40089c53891SMichal Simek 40126c7945aSMichal Simek while (xemaclite_txbufferavailable(emaclite) && maxtry) { 40289c53891SMichal Simek udelay(10); 40389c53891SMichal Simek maxtry--; 40489c53891SMichal Simek } 40589c53891SMichal Simek 40689c53891SMichal Simek if (!maxtry) { 40789c53891SMichal Simek printf("Error: Timeout waiting for ethernet TX buffer\n"); 40889c53891SMichal Simek /* Restart PING TX */ 4095a4baa33SMichal Simek out_be32(®s->tx_ping_tsr, 0); 410947324b9SMichal Simek if (emaclite->txpp) { 4115a4baa33SMichal Simek out_be32(®s->tx_pong_tsr, 0); 412947324b9SMichal Simek } 41395efa79dSMichal Simek return -1; 41489c53891SMichal Simek } 41589c53891SMichal Simek 41689c53891SMichal Simek /* Determine if the expected buffer address is empty */ 41700702518SMichal Simek reg = in_be32(®s->tx_ping_tsr); 41815c239c8SMichal Simek if ((reg & XEL_TSR_XMIT_BUSY_MASK) == 0) { 41900702518SMichal Simek debug("Send packet from tx_ping buffer\n"); 42089c53891SMichal Simek /* Write the frame to the buffer */ 42100702518SMichal Simek xemaclite_alignedwrite(ptr, ®s->tx_ping, len); 42200702518SMichal Simek out_be32(®s->tx_ping_tplr, len & 42300702518SMichal Simek (XEL_TPLR_LENGTH_MASK_HI | XEL_TPLR_LENGTH_MASK_LO)); 42400702518SMichal Simek reg = in_be32(®s->tx_ping_tsr); 42589c53891SMichal Simek reg |= XEL_TSR_XMIT_BUSY_MASK; 42600702518SMichal Simek out_be32(®s->tx_ping_tsr, reg); 42795efa79dSMichal Simek return 0; 42889c53891SMichal Simek } 429947324b9SMichal Simek 430947324b9SMichal Simek if (emaclite->txpp) { 43189c53891SMichal Simek /* Determine if the expected buffer address is empty */ 43200702518SMichal Simek reg = in_be32(®s->tx_pong_tsr); 43315c239c8SMichal Simek if ((reg & XEL_TSR_XMIT_BUSY_MASK) == 0) { 43400702518SMichal Simek debug("Send packet from tx_pong buffer\n"); 43589c53891SMichal Simek /* Write the frame to the buffer */ 43600702518SMichal Simek xemaclite_alignedwrite(ptr, ®s->tx_pong, len); 43700702518SMichal Simek out_be32(®s->tx_pong_tplr, len & 438947324b9SMichal Simek (XEL_TPLR_LENGTH_MASK_HI | 43900702518SMichal Simek XEL_TPLR_LENGTH_MASK_LO)); 44000702518SMichal Simek reg = in_be32(®s->tx_pong_tsr); 44189c53891SMichal Simek reg |= XEL_TSR_XMIT_BUSY_MASK; 44200702518SMichal Simek out_be32(®s->tx_pong_tsr, reg); 44395efa79dSMichal Simek return 0; 44489c53891SMichal Simek } 445947324b9SMichal Simek } 446947324b9SMichal Simek 44789c53891SMichal Simek puts("Error while sending frame\n"); 44895efa79dSMichal Simek return -1; 44989c53891SMichal Simek } 45089c53891SMichal Simek 451d538ee1bSMichal Simek static int emaclite_recv(struct udevice *dev, int flags, uchar **packetp) 45289c53891SMichal Simek { 4534d2749beSMichal Simek u32 length, first_read, reg, attempt = 0; 4544d2749beSMichal Simek void *addr, *ack; 455773cfa8dSMichal Simek struct xemaclite *emaclite = dev->priv; 4564d2749beSMichal Simek struct emaclite_regs *regs = emaclite->regs; 4574d2749beSMichal Simek struct ethernet_hdr *eth; 4584d2749beSMichal Simek struct ip_udp_hdr *ip; 45989c53891SMichal Simek 4604d2749beSMichal Simek try_again: 4614d2749beSMichal Simek if (!emaclite->use_rx_pong_buffer_next) { 4624d2749beSMichal Simek reg = in_be32(®s->rx_ping_rsr); 4634d2749beSMichal Simek debug("Testing data at rx_ping\n"); 46489c53891SMichal Simek if ((reg & XEL_RSR_RECV_DONE_MASK) == XEL_RSR_RECV_DONE_MASK) { 4654d2749beSMichal Simek debug("Data found in rx_ping buffer\n"); 4664d2749beSMichal Simek addr = ®s->rx_ping; 4674d2749beSMichal Simek ack = ®s->rx_ping_rsr; 46889c53891SMichal Simek } else { 4694d2749beSMichal Simek debug("Data not found in rx_ping buffer\n"); 4704d2749beSMichal Simek /* Pong buffer is not available - return immediately */ 4714d2749beSMichal Simek if (!emaclite->rxpp) 4724d2749beSMichal Simek return -1; 473947324b9SMichal Simek 4744d2749beSMichal Simek /* Try pong buffer if this is first attempt */ 4754d2749beSMichal Simek if (attempt++) 4764d2749beSMichal Simek return -1; 4774d2749beSMichal Simek emaclite->use_rx_pong_buffer_next = 4784d2749beSMichal Simek !emaclite->use_rx_pong_buffer_next; 4794d2749beSMichal Simek goto try_again; 4804d2749beSMichal Simek } 481947324b9SMichal Simek } else { 4824d2749beSMichal Simek reg = in_be32(®s->rx_pong_rsr); 4834d2749beSMichal Simek debug("Testing data at rx_pong\n"); 4844d2749beSMichal Simek if ((reg & XEL_RSR_RECV_DONE_MASK) == XEL_RSR_RECV_DONE_MASK) { 4854d2749beSMichal Simek debug("Data found in rx_pong buffer\n"); 4864d2749beSMichal Simek addr = ®s->rx_pong; 4874d2749beSMichal Simek ack = ®s->rx_pong_rsr; 4884d2749beSMichal Simek } else { 4894d2749beSMichal Simek debug("Data not found in rx_pong buffer\n"); 4904d2749beSMichal Simek /* Try ping buffer if this is first attempt */ 4914d2749beSMichal Simek if (attempt++) 4924d2749beSMichal Simek return -1; 4934d2749beSMichal Simek emaclite->use_rx_pong_buffer_next = 4944d2749beSMichal Simek !emaclite->use_rx_pong_buffer_next; 4954d2749beSMichal Simek goto try_again; 49689c53891SMichal Simek } 497947324b9SMichal Simek } 4984d2749beSMichal Simek 4994d2749beSMichal Simek /* Read all bytes for ARP packet with 32bit alignment - 48bytes */ 5004d2749beSMichal Simek first_read = ALIGN(ETHER_HDR_SIZE + ARP_HDR_SIZE + ETH_FCS_LEN, 4); 5014d2749beSMichal Simek xemaclite_alignedread(addr, etherrxbuff, first_read); 5024d2749beSMichal Simek 5034d2749beSMichal Simek /* Detect real packet size */ 5044d2749beSMichal Simek eth = (struct ethernet_hdr *)etherrxbuff; 5054d2749beSMichal Simek switch (ntohs(eth->et_protlen)) { 5064d2749beSMichal Simek case PROT_ARP: 5074d2749beSMichal Simek length = first_read; 5084d2749beSMichal Simek debug("ARP Packet %x\n", length); 50989c53891SMichal Simek break; 5104d2749beSMichal Simek case PROT_IP: 5114d2749beSMichal Simek ip = (struct ip_udp_hdr *)(etherrxbuff + ETHER_HDR_SIZE); 5124d2749beSMichal Simek length = ntohs(ip->ip_len); 5134d2749beSMichal Simek length += ETHER_HDR_SIZE + ETH_FCS_LEN; 5144d2749beSMichal Simek debug("IP Packet %x\n", length); 51589c53891SMichal Simek break; 51689c53891SMichal Simek default: 51789c53891SMichal Simek debug("Other Packet\n"); 51880439252SMichal Simek length = PKTSIZE; 51989c53891SMichal Simek break; 52089c53891SMichal Simek } 52189c53891SMichal Simek 5224d2749beSMichal Simek /* Read the rest of the packet which is longer then first read */ 5234d2749beSMichal Simek if (length != first_read) 5244d2749beSMichal Simek xemaclite_alignedread(addr + first_read, 5254d2749beSMichal Simek etherrxbuff + first_read, 5264d2749beSMichal Simek length - first_read); 52789c53891SMichal Simek 52889c53891SMichal Simek /* Acknowledge the frame */ 5294d2749beSMichal Simek reg = in_be32(ack); 53089c53891SMichal Simek reg &= ~XEL_RSR_RECV_DONE_MASK; 5314d2749beSMichal Simek out_be32(ack, reg); 53289c53891SMichal Simek 5334d2749beSMichal Simek debug("Packet receive from 0x%p, length %dB\n", addr, length); 534f412b6abSMichal Simek *packetp = etherrxbuff; 535f412b6abSMichal Simek return length; 53689c53891SMichal Simek } 537042272a6SMichal Simek 538d538ee1bSMichal Simek static int emaclite_miiphy_read(struct mii_dev *bus, int addr, 539d538ee1bSMichal Simek int devad, int reg) 540d722e864SMichal Simek { 541d722e864SMichal Simek u32 ret; 542d538ee1bSMichal Simek u16 val = 0; 543d722e864SMichal Simek 544d538ee1bSMichal Simek ret = phyread(bus->priv, addr, reg, &val); 545d538ee1bSMichal Simek debug("emaclite: Read MII 0x%x, 0x%x, 0x%x, %d\n", addr, reg, val, ret); 546d538ee1bSMichal Simek return val; 547d538ee1bSMichal Simek } 548d538ee1bSMichal Simek 549d538ee1bSMichal Simek static int emaclite_miiphy_write(struct mii_dev *bus, int addr, int devad, 550d538ee1bSMichal Simek int reg, u16 value) 551d538ee1bSMichal Simek { 552d538ee1bSMichal Simek debug("emaclite: Write MII 0x%x, 0x%x, 0x%x\n", addr, reg, value); 553d538ee1bSMichal Simek return phywrite(bus->priv, addr, reg, value); 554d538ee1bSMichal Simek } 555d538ee1bSMichal Simek 556d538ee1bSMichal Simek static int emaclite_probe(struct udevice *dev) 557d538ee1bSMichal Simek { 558d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 559d538ee1bSMichal Simek int ret; 560d538ee1bSMichal Simek 561d538ee1bSMichal Simek emaclite->bus = mdio_alloc(); 562d538ee1bSMichal Simek emaclite->bus->read = emaclite_miiphy_read; 563d538ee1bSMichal Simek emaclite->bus->write = emaclite_miiphy_write; 564d538ee1bSMichal Simek emaclite->bus->priv = emaclite; 565d538ee1bSMichal Simek strcpy(emaclite->bus->name, "emaclite"); 566d538ee1bSMichal Simek 567d538ee1bSMichal Simek ret = mdio_register(emaclite->bus); 568d538ee1bSMichal Simek if (ret) 569d722e864SMichal Simek return ret; 570d538ee1bSMichal Simek 571d538ee1bSMichal Simek return 0; 572d722e864SMichal Simek } 573d722e864SMichal Simek 574d538ee1bSMichal Simek static int emaclite_remove(struct udevice *dev) 575d722e864SMichal Simek { 576d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 577d722e864SMichal Simek 578d538ee1bSMichal Simek free(emaclite->phydev); 579d538ee1bSMichal Simek mdio_unregister(emaclite->bus); 580d538ee1bSMichal Simek mdio_free(emaclite->bus); 581d538ee1bSMichal Simek 582d538ee1bSMichal Simek return 0; 583d722e864SMichal Simek } 584d722e864SMichal Simek 585d538ee1bSMichal Simek static const struct eth_ops emaclite_ops = { 586f03ec010SMichal Simek .start = emaclite_start, 587d538ee1bSMichal Simek .send = emaclite_send, 588d538ee1bSMichal Simek .recv = emaclite_recv, 589f03ec010SMichal Simek .stop = emaclite_stop, 590d538ee1bSMichal Simek }; 591d538ee1bSMichal Simek 592d538ee1bSMichal Simek static int emaclite_ofdata_to_platdata(struct udevice *dev) 593042272a6SMichal Simek { 594d538ee1bSMichal Simek struct eth_pdata *pdata = dev_get_platdata(dev); 595d538ee1bSMichal Simek struct xemaclite *emaclite = dev_get_priv(dev); 596d538ee1bSMichal Simek int offset = 0; 597042272a6SMichal Simek 598d538ee1bSMichal Simek pdata->iobase = (phys_addr_t)dev_get_addr(dev); 599*39e020efSZubair Lutfullah Kakakhel emaclite->regs = (struct emaclite_regs *)ioremap_nocache(pdata->iobase, 600*39e020efSZubair Lutfullah Kakakhel 0x10000); 601042272a6SMichal Simek 602d722e864SMichal Simek emaclite->phyaddr = -1; 603d722e864SMichal Simek 604d538ee1bSMichal Simek offset = fdtdec_lookup_phandle(gd->fdt_blob, dev->of_offset, 605d538ee1bSMichal Simek "phy-handle"); 606d538ee1bSMichal Simek if (offset > 0) 607d538ee1bSMichal Simek emaclite->phyaddr = fdtdec_get_int(gd->fdt_blob, offset, 608d538ee1bSMichal Simek "reg", -1); 609042272a6SMichal Simek 610d538ee1bSMichal Simek emaclite->txpp = fdtdec_get_int(gd->fdt_blob, dev->of_offset, 611d538ee1bSMichal Simek "xlnx,tx-ping-pong", 0); 612d538ee1bSMichal Simek emaclite->rxpp = fdtdec_get_int(gd->fdt_blob, dev->of_offset, 613d538ee1bSMichal Simek "xlnx,rx-ping-pong", 0); 614d722e864SMichal Simek 615d538ee1bSMichal Simek printf("EMACLITE: %lx, phyaddr %d, %d/%d\n", (ulong)emaclite->regs, 616d538ee1bSMichal Simek emaclite->phyaddr, emaclite->txpp, emaclite->rxpp); 617d722e864SMichal Simek 618d538ee1bSMichal Simek return 0; 619042272a6SMichal Simek } 620d538ee1bSMichal Simek 621d538ee1bSMichal Simek static const struct udevice_id emaclite_ids[] = { 622d538ee1bSMichal Simek { .compatible = "xlnx,xps-ethernetlite-1.00.a" }, 623d538ee1bSMichal Simek { } 624d538ee1bSMichal Simek }; 625d538ee1bSMichal Simek 626d538ee1bSMichal Simek U_BOOT_DRIVER(emaclite) = { 627d538ee1bSMichal Simek .name = "emaclite", 628d538ee1bSMichal Simek .id = UCLASS_ETH, 629d538ee1bSMichal Simek .of_match = emaclite_ids, 630d538ee1bSMichal Simek .ofdata_to_platdata = emaclite_ofdata_to_platdata, 631d538ee1bSMichal Simek .probe = emaclite_probe, 632d538ee1bSMichal Simek .remove = emaclite_remove, 633d538ee1bSMichal Simek .ops = &emaclite_ops, 634d538ee1bSMichal Simek .priv_auto_alloc_size = sizeof(struct xemaclite), 635d538ee1bSMichal Simek .platdata_auto_alloc_size = sizeof(struct eth_pdata), 636d538ee1bSMichal Simek }; 637